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The dynamic compressive responses of the laminated ceramic were tested with a range of high strain rates from 1.1 × 103 s−1 to 3.3 × 103 s−1, and the results showed that the laminated ceramics obtain excellent dynamic compressive performance with high dynamic strength of 1.1 2.6 GPa, large pseudoplastic strain of 7.7 12.2% and good energy absorptivity of 23.34 34.59%.
Across 485 subjects (342 women and 243 men), RT resulted in modest size gains and moderate (isometric) to high (dynamic) strength gains.
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According to Eq. (7), high loading rates increase the rock strength, i.e., the joint asperities have higher dynamic strength in the direct shear test under higher shearing rates, which suppresses the joint asperity degradation but promotes the shearing sliding along the joint asperities.
The structural nature of the dynamic strength increase factor (DIF) is demonstrated by means of high-dynamic strength values measured on mortar cylinders of different size.
The model is free from fitting parameters and explains our measurements very well, indicating that high-dynamic strength increase is a structural effect.
A combination of high dynamic shear yield strength and large uniform dynamic shear strain was observed, exceeding all other metals and alloys reported so far.
The results indicated that the prepared NBR/AO-80 rubber nanocomposites had single relaxation transitions, improved tensile strengths, high dynamic mechanical loss values, and reasonably good stabilities.
In contrary to the typical strain rate sensitivity results for mild steel where the dynamic strength increase at high strain rate usually occurs at the price of ductility reduction, our results show that the TRIP800 under examination has positive strain rate sensitivity on both strength and ductility.
The dynamic strength of concrete material is normally higher than the static strength.
Split Hopkinson pressure bar (SHPB) technique has been used widely to measure the dynamic strength enhancement of concrete-like materials at high strain-rate between 101 and 103 s−103
It can be seen that the obtained dynamic strength of the specimen (34 MPa) is higher than the input static strength of the specimen (20 MPa), which is probably caused by the effects of the loading rate.
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